Genome-wide identification and expression analysis of two-component system genes in switchgrass (Panicum virgatum L.)

Author:

Wu Baolin1,Sun Mengyu1,Zhong Tao1,Zhang Jiawei1,Lei Tingshu1,Yan Yuming1,Chen Xiaohong1,Nan Rui1,Sun Fengli1,Zhang Chao1,Xi Yajun1

Affiliation:

1. Northwest A&F University

Abstract

Abstract

Composed of Histidine Kinases (HKs), Histidine Phosphotransfer Proteins (HPs), and Response Regulators (RRs), the Two-Component System (TCS) plays an essential role in guiding plant growth, development, and reactions to different environmental factors. Although TCS genes have been extensively identified in a variety of plants, the genome-wide recognition and examination of TCS in switchgrass remain unreported. Accordingly, this study identified a total of 87 TCS members in the genome of switchgrass, comprising 20 HK(L)s, 10 HPs, and 57 RRs. Detailed analyses were also conducted on their gene structures, conserved domains, and phylogenetic relationships. Moreover, this study analysed the gene expression profiles across diverse organs and investigated their response patterns to adverse environmental stresses. Results revealed that 87 TCS genes were distributed across 18 chromosomes, with uneven distribution. Amplification of these genes in switchgrass was achieved through both fragment and tandem duplication. PvTCS members are relatively conservative in the evolutionary process, but the gene structure varies significantly. Various cis-acting elements, varying in types and amounts, are present in the promoter region of PvTCS, all related to plant growth, development, and abiotic stress, due to the TCS gene structure. Protein-protein interaction and microRNA prediction suggest complex interactions and transcriptional regulation among TCS members. Additionally, most TCS members are expressed in roots and stems, with some genes showing organ-specific expression at different stages of leaf and inflorescence development. Under conditions of abiotic stress such as drought, low temperature, high temperature, and salt stress, as well as exogenous abscisic acid (ABA), the expression of most TCS genes is either stimulated or inhibited. Our systematic analysis could offer insight into the characterization of the TCS genes, and further the growth of functional studies in switchgrass.

Publisher

Springer Science and Business Media LLC

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